US2006045228A1PendingUtilityA1

Dual-plasma fusion and fission fuel cells

Assignee: DAW SHIEN SCIENT RES & DEV INCPriority: Aug 30, 2004Filed: Oct 22, 2004Published: Mar 2, 2006
Est. expiryAug 30, 2024(expired)· nominal 20-yr term from priority
G21D 7/00Y02E30/00F03H 1/0025Y02E30/30
16
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Claims

Abstract

New [GOD, I], [GOD, II], & [GOD, III] dual-plasma fuel cells provide the electric start systems to start their warm-up processes, automatically. After their warm-up processes done and the operation temperatures reached, the dual-plasma fuel cells will run independently by continuously supplying fuels and moisture into the units. In dual-plasma nuclear [fusion and/or fission] fuel cells' configuration, electrical power will be generated from the nuclear-thermal-plasmas reaction by exothermal heating from combustion & nuclear reactions. With conducting high-electrons' current, the cable, loads, and electrodes are connected among one another between two plasmas' ionizing chambers for civil utility purposes. In the [GOD, II] dual-plasma fusion fuel cell, heavy water [D 2 O] injection into the atomizing chambers increases the plasmas heating and electrical conductivities. And the un-like charges of the heavy water's [D 2 O + ], & [D 2 O − ] react with plasmas' [ 2 H + & O = ] combustion heating which will induce the fusion reaction and release much more nuclear heating power for initiation of the next plasmas-generation cycle much easily. For the [GOD, III] dual-plasma fission fuel cell, fission fuels located in the combustion & nuclear reaction space through robotic movements provide additional nuclear-thermal energy that allows for initiation of the plasmas-generation process for the next cycle. For [GerTh. I] dual-plasma jet thruster, the dual plasmas are ejected to an opening end of a ‘C’ shaped magnet, and linear thrust is generated, according to the right-hand rule as in a jet thruster of propulsion for space traveling.

Claims

exact text as granted — not AI-modified
1 . A dual-plasma fuel cell comprising: 
 an automatically electric starting system;    a pair of fuel sources having two ionizable fuels;    a pair of ionization chambers, each one of said chambers coupled to receive one of said plasma fuels, respectively;    a pair of ejection portals, each one of said portals depending from one of said ionization chambers;    a space disposed between said ionizing chambers for combustion & neutralization of said fuels; and wherein the combustion of said ionized fuels generates thermal energy for heating said chambers and initializing the next plasmas-generation cycle.    
     
     
         2 . The dual plasma fuel cell of  claim 1 , further comprising: 
 fusion fuel means for providing additional nuclear-thermal energy for heating said chambers and initializing a next plasmas-generation cycle.    
     
     
         3 . The dual-plasma fusion fuel cell of  claim 2 , further comprising: 
 heavy water [D 2 O] injection means into said atomizing chambers.    
     
     
         4 . The dual-plasma fusion fuel cell of  claim 3 , wherein said heavy water [D 2 O] injection means further comprises reaction of un-like charges of the heavy water's [D 2 O + ], & [D 2 O − ] with plasmas' [2H + & O = ], wherein said combustion heating which inducing the fusion reaction and releasing more nuclear heating power for initiation of more plasmas generation easily for the next plasmas-generation cycle.  
     
     
         5 . The dual-plasma fusion fuel cell of  claim 4 , further comprising: 
 electrical power generation from said nuclear-thermal-plasmas reaction by exothermal heating from combustion & nuclear reactions utilizing conducting high-electrons' current, the cable, loads, and electrodes in electrical communication among one another between two plasmas' ionizing chambers.    
     
     
         6 . The dual-plasma fuel cell of  claim 1 , wherein said fission fuel means comprise concentrated cemented fission fuel sticks.  
     
     
         7 . The dual-plasma fission fuel cell of  claim 6 , further comprising: 
 a crucible beneath said fuel sticks; and    a plurality of Lead (Pb) tubes disposed inside said crucible;    wherein as said concentrated reacting fuel sticks are melted into a molten metal, said molten metal flows into said Lead (Pb) tubes as heating and radiation moderator, whereby water is in fluid communication with said Lead (Pb) tubes for absorbing fission heat and cooling down of said Lead (Pb) tubes.    
     
     
         8 . The dual-plasma nuclear fuel cells as of  claim 3 , further comprising: 
 a ‘C’ shaped magnet for plasmas ejected through its opening magnetic field generates the linear thrust for propulsion; and    a nozzle for discharging the combustion exhaustion;    wherein the combustion of said ionized fuels generates auxiliary-thrust when discharged from the said nozzle;    whereby said combination forms a dual plasmas thruster.    
     
     
         9 . The dual-plasma nuclear fuel cells as of  claim 6 , further comprising: 
 a ‘C’ shaped magnet for plasmas ejected through its opening magnetic field generates the linear thrust for propulsion; and    a nozzle for discharging the combustion exhaustion;    wherein the combustion of said ionized fuels generates auxiliary-thrust when discharged from the said nozzle;    whereby said combination forms a dual plasmas thruster.    
     
     
         10 . The dual-plasma jet thruster of  claim 8 , further comprising: 
 nuclear fuel means for providing additional nuclear-thermal energy for heating said chambers and initializing the next plasmas-generation cycle.    
     
     
         11 . The dual-plasma jet thruster of  claim 10 , further comprising: 
 heavy water [D 2 O] injection means into said atomizing chambers.    
     
     
         12 . The dual-plasma jet thruster of  claim 9 , further comprising: 
 nuclear fuel means for providing additional nuclear-thermal energy for heating said chambers and initializing the next plasmas-generation cycle.

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